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Porous Dexamethasone-Loaded Polyurethane Coatings Extend Performance Window of Implantable Glucose Sensors in vivo

机译:负载地塞米松的聚氨酯多孔涂层扩展了体内植入式葡萄糖传感器的性能窗口

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摘要

Continuous glucose sensors offer the promise of tight glycemic control for insulin dependent diabetics; however, utilization of such systems has been hindered by issues of tissue compatibility. Here we report on the in vivo performance of implanted glucose sensors coated with Dexamethasone-loaded (Dex-loaded) porous coatings employed to mediate the tissue-sensor interface. Two animal studies were conducted to 1) characterize the tissue modifying effects of the porous Dex-loaded coatings deployed on sensor surrogate implants, and 2) investigate the effects of the same coatings on the in vivo performance of Medtronic MiniMed SOF-SENSOR™ glucose sensors. The tissue response to implants was evaluated by quantifying macrophage infiltration, blood vessel formation, and collagen density around implants. Sensor function was assessed by measuring changes in sensor sensitivity and time lag, calculating the Mean Absolute Relative Difference (MARD) for each sensor treatment, and performing functional glucose challenge test at relevant time points. Implants treated with porous Dex-loaded coatings diminished inflammation and enhanced vascularization of the tissue surrounding the implants. Functional sensors with Dex-loaded porous coatings showed enhanced sensor sensitivity over a 21-day period when compared to controls. Enhanced sensor sensitivity was accompanied with an increase in sensor signal lag and MARD score. These results indicate that Dex-loaded porous coatings were able to elicit an attenuated tissue response, and that such tissue microenvironment could be conducive towards extending the performance window of glucose sensors in vivo.
机译:连续血糖传感器有望为胰岛素依赖型糖尿病患者提供严格的血糖控制。然而,由于组织相容性的问题阻碍了这种系统的使用。在这里,我们报道了地塞米松负载(Dex负载)多孔涂层涂层的葡萄糖传感器的体内性能,该多孔涂层用于介导组织-传感器界面。进行了两项动物研究,以:1)表征部署在传感器替代植入物上的多孔Dex负载涂层的组织修饰作用,以及2)研究相同涂层对Medtronic MiniMed SOF-SENSOR™葡萄糖传感器的体内性能的影响。通过量化巨噬细胞浸润,血管形成和植入物周围的胶原蛋白密度来评估组织对植入物的反应。通过测量传感器灵敏度和时滞的变化,计算每种传感器治疗的平均绝对相对差(MARD)并在相关时间点进行功能性葡萄糖激发试验来评估传感器功能。用多孔Dex涂层处理的植入物可减轻炎症,并增强植入物周围组织的血管生成。与对照组相比,带有Dex多孔涂层的功能传感器在21天的时间内显示出更高的传感器灵敏度。传感器灵敏度的提高伴随着传感器信号滞后和MARD分数的增加。这些结果表明,装有Dex的多孔涂层能够引起减弱的组织反应,并且这种组织微环境可能有利于扩大体内葡萄糖传感器的性能窗口。

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